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首页> 外文期刊>Journal of Applied Phycology >Time-dependent transcriptome profile of genes involved in triacylglycerol (TAG) and polyunsaturated fatty acid synthesis in Nannochloropsis gaditana during nitrogen starvation
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Time-dependent transcriptome profile of genes involved in triacylglycerol (TAG) and polyunsaturated fatty acid synthesis in Nannochloropsis gaditana during nitrogen starvation

机译:在氮饥饿期间,在Nannchloropsis gaditana中参与三酰基甘油(标签)和多不饱和脂肪酸合成的基因的时间依赖性转录谱

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In this research, the gene expression of genes involved in lipid metabolism of the eustigmatophyte alga Nannochloropsis gaditana was measured by transcriptomic data. This microalga can be used as a source of triacylglycerol (TAG) and the omega-3 fatty acid eicosapentaenoic acid (EPA). Insight in TAG and EPA production and regulation are needed to improve their productivity. Nitrogen starvation induces TAG accumulation in N. gaditana. Previous research showed that during nitrogen starvation, EPA was translocated from the polar lipids to TAG and de novo synthesized in N. gaditana. Therefore, the expression levels of genes involved in fatty acid translocation and de novo TAG synthesis were measured. Furthermore, the genes involved in de novo EPA synthesis such as elongases and desaturases were studied. The expression levels were measured during the first hours of nitrogen starvation and the subsequent period of 14 days. One phospholipid:diacylglycerol acyltransferase (PDAT) gene involved in translocation of fatty acids from membrane lipids to TAG was upregulated. In addition, several lipases were upregulated, suggesting that these enzymes might be responsible for the translocation of EPA to TAG. Most desaturases and elongases involved in de novo EPA synthesis were downregulated during nitrogen starvation, except for Delta 9 desaturase which was upregulated. This upregulation correlates with the increase in oleic acid. Due to the presence of many hypothetical genes, improvement in annotation is needed to increase our understanding of these pathways and their regulation.
机译:在该研究中,通过转录组数据测量涉及QualdMatophyte藻类藻藻藻藻藻藻藻藻藻藻藻藻藻藻藻藻藻藻藻藻酸盐藻藻藻酸盐藻藻藻酸盐甘露藻藻基因族代谢的基因表达。该微藻可用作三酰基甘油(标签)和ω-3脂肪酸己烯烯酮(EPA)的源。需要在标签和EPA生产和监管方面的洞察力来提高其生产力。氮饥饿诱导在N.Gaditana中的标签积累。以前的研究表明,在氮饥饿期间,EPA被从极性脂质转移到标签和De Novo在N.Gaditana合成。因此,测量脂肪酸易位和DE Novo标签合成所涉及的基因的表达水平。此外,研究了涉及脱诺EPA合成的基因,例如连续酶和去饱和酶。在氮饥饿的第一小时和后续14天期间测量表达水平。一种磷脂:上调来自膜脂质转化的二酰基甘油酰基转移酶(PDAT)基因从膜脂质转移到标签上。此外,上调了几种脂肪酶,表明这些酶可能是对EPA的易位标签的负责。除了氮饥饿期间,涉及De Novo EPA合成的大多数去饱和酶和延伸酶,除了上调的Delta 9去饱和酶。这种上调与油酸的增加相关。由于存在许多假设基因,需要提高注释,以增加我们对这些途径及其监管的理解。

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